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Economics, design and emergency control of electrically-interconnected offshore gas/oil installations

机译:电互联海上燃气/油装置的经济学,设计和应急控制

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In order to improve the load factor of generating plant on offshore platforms it is economically advantageous to electrically interconnect platforms, one or more of which may be without generation capability. Furthermore, the practical distances between platforms and the amounts of power to be transferred have meant that an economical interconnection voltage can be as high as 33 kV using step-up/step down transformers. The authors examine the economics, design and emergency control features of a typical 3-platform arrangement. In particular the advantages of a power management system are discussed including the importance of its co-ordination with individual protection relays in order to ensure plant stability following system disturbances including faults and loss of generation. With regard to the latter, specialised techniques are described for the accurate system simulation during long term disturbances. These are additional to the transient stability analyses carried out to determine acceptable fault clearance times.
机译:为了改善海上平台上产生设备的负荷因子,对电互连平台的经济上有利,其中一个或多个可能没有生成能力。此外,平台之间的实际距离和要传输的功率量的意义意味着经济互连电压可以使用升压/降压变压器高达33 kV。作者研究了典型的3平台布置的经济学,设计和紧急控制特征。特别地,讨论了电力管理系统的优点,包括与各个保护继电器的协调的重要性,以确保在系统障碍之后的植物稳定性,包括故障和发电丧失。关于后者,在长期干扰期间描述了专业技术。这些是用于确定可接受的故障间隙时间的瞬态稳定性分析。

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